Company Filing History:
Years Active: 2005
Title: The Innovations of Rob D Kelly in Orthopedic Traction
Introduction
Rob D Kelly, an innovative inventor based in Anaheim, California, has made significant contributions to the field of orthopedic devices. With one patent to his name, his work showcases a blend of practicality and advanced engineering aimed at improving patient care.
Latest Patents
Rob's most notable patent is for an orthopedic traction device. This apparatus includes a first tubular member anchored to a stationary structure, such as an operating table, and a second tubular member that operates telescopically within the first. A hand-crank and jack-screw mechanism allows for adjustable positioning of the second member relative to the first. The device also features a tensiometer at the distal end of the second member, which is designed for attachment to a part of the patient's body. The tensiometer can either use a compressible, calibrated coil spring with a vernier scale for precise adjustments, or a load-cell with a digital readout to measure traction force. Such innovative features represent advancements in orthopedic treatments and patient comfort.
Career Highlights
Throughout his career, Rob D Kelly has demonstrated an unwavering commitment to developing medical devices that enhance therapeutic outcomes. His invention of the orthopedic traction device reflects his ability to solve complex problems in a clinical setting, showcasing his dedication to engineering and medicine.
Collaborations
Rob has collaborated with notable peers in his field, including Roger J Malcolm and Tim M Salter. These collaborations highlight the importance of teamwork in driving innovation and the sharing of knowledge to improve medical technologies.
Conclusion
Rob D Kelly's work is a testament to the impact of dedicated inventors in the medical field. His invention of the orthopedic traction device significantly benefits both medical professionals and patients alike. With continued collaboration and innovation, the potential for further advancements remains vast in the realm of orthopedic solutions.